Davies Douglas R, Mushtaq Adeel, Interthal Heidrun, Champoux James J, Hol Wim G J
Department of Biochemistry, Box 357742, University of Washington, Seattle, WA 98195-7742, USA.
J Mol Biol. 2006 Apr 7;357(4):1202-10. doi: 10.1016/j.jmb.2006.01.022. Epub 2006 Jan 26.
Type IB topoisomerases are essential enzymes that are responsible for relaxing superhelical tension in DNA by forming a transient covalent nick in one strand of the DNA duplex. Topoisomerase I is a target for anti-cancer drugs such as camptothecin, and these drugs also target the topoisomerases I in pathogenic trypanosomes including Leishmania species and Trypanosoma brucei. Most eukaryotic enzymes, including human topoisomerase I, are monomeric. However, for Leishmania donovani, the DNA-binding activity and the majority of residues involved in catalysis are located in a large subunit, designated TOP1L, whereas the catalytic tyrosine residue responsible for covalent attachment to DNA is located in a smaller subunit, called TOP1S. Here, we present the 2.27A crystal structure of an active truncated L.donovani TOP1L/TOP1S heterodimer bound to nicked double-stranded DNA captured as a vanadate complex. The vanadate forms covalent linkages between the catalytic tyrosine residue of the small subunit and the nicked ends of the scissile DNA strand, mimicking the previously unseen transition state of the topoisomerase I catalytic cycle. This structure fills a critical gap in the existing ensemble of topoisomerase I structures and provides crucial insights into the catalytic mechanism.
IB型拓扑异构酶是一类重要的酶,它们通过在DNA双链的一条链上形成瞬时共价切口来缓解DNA中的超螺旋张力。拓扑异构酶I是喜树碱等抗癌药物的作用靶点,这些药物也作用于包括利什曼原虫属和布氏锥虫在内的致病性锥虫中的拓扑异构酶I。大多数真核酶,包括人类拓扑异构酶I,都是单体。然而,对于杜氏利什曼原虫来说,DNA结合活性和催化过程中涉及的大多数残基位于一个称为TOP1L的大亚基中,而负责与DNA共价连接的催化酪氨酸残基位于一个称为TOP1S的小亚基中。在这里,我们展示了一个活性截短的杜氏利什曼原虫TOP1L/TOP1S异二聚体与作为钒酸盐复合物捕获的带切口双链DNA结合的2.27埃晶体结构。钒酸盐在小亚基的催化酪氨酸残基和可切割DNA链的切口末端之间形成共价连接,模拟了拓扑异构酶I催化循环中以前未见的过渡态。这种结构填补了现有拓扑异构酶I结构集合中的一个关键空白,并为催化机制提供了重要见解。